Tasmota/lib/IRremoteESP8266-2.5.2.03/test/ir_Sony_test.cpp

358 lines
14 KiB
C++

// Copyright 2017 David Conran
#include "IRsend.h"
#include "IRsend_test.h"
#include "gtest/gtest.h"
// Tests for sendSony().
// Test sending typical data only.
TEST(TestSendSony, SendDataOnly) {
IRsendTest irsend(4);
irsend.begin();
irsend.reset();
irsend.sendSony(0);
// We expect three 20-bit commands to be sent.
EXPECT_EQ(
"m2400s600m600s600m600s600m600s600m600s600m600s600m600s600m600s600"
"m600s600m600s600m600s600m600s600m600s600m600s600m600s600m600s600"
"m600s600m600s600m600s600m600s600m600s18600"
"m2400s600m600s600m600s600m600s600m600s600m600s600m600s600m600s600"
"m600s600m600s600m600s600m600s600m600s600m600s600m600s600m600s600"
"m600s600m600s600m600s600m600s600m600s18600"
"m2400s600m600s600m600s600m600s600m600s600m600s600m600s600m600s600"
"m600s600m600s600m600s600m600s600m600s600m600s600m600s600m600s600"
"m600s600m600s600m600s600m600s600m600s18600",
irsend.outputStr());
irsend.reset();
irsend.sendSony(0x240C, kSony20Bits);
// We expect three 20-bit commands to be sent.
EXPECT_EQ(
"m2400s600m600s600m600s600m600s600m600s600m600s600m600s600m1200s600"
"m600s600m600s600m1200s600m600s600m600s600m600s600m600s600m600s600"
"m600s600m1200s600m1200s600m600s600m600s16200"
"m2400s600m600s600m600s600m600s600m600s600m600s600m600s600m1200s600"
"m600s600m600s600m1200s600m600s600m600s600m600s600m600s600m600s600"
"m600s600m1200s600m1200s600m600s600m600s16200"
"m2400s600m600s600m600s600m600s600m600s600m600s600m600s600m1200s600"
"m600s600m600s600m1200s600m600s600m600s600m600s600m600s600m600s600"
"m600s600m1200s600m1200s600m600s600m600s16200",
irsend.outputStr());
irsend.reset();
irsend.sendSony(0x240C, kSony15Bits);
// We expect three 15-bit commands to be sent.
EXPECT_EQ(
"m2400s600m600s600m1200s600m600s600m600s600m1200s600m600s600"
"m600s600m600s600m600s600m600s600m600s600m1200s600m1200s600m600s600"
"m600s22200"
"m2400s600m600s600m1200s600m600s600m600s600m1200s600m600s600"
"m600s600m600s600m600s600m600s600m600s600m1200s600m1200s600m600s600"
"m600s22200"
"m2400s600m600s600m1200s600m600s600m600s600m1200s600m600s600"
"m600s600m600s600m600s600m600s600m600s600m1200s600m1200s600m600s600"
"m600s22200",
irsend.outputStr());
irsend.reset();
irsend.sendSony(0xA90, kSony12Bits);
// We expect three 15-bit commands to be sent.
EXPECT_EQ(
"m2400s600m1200s600m600s600m1200s600m600s600m1200s600m600s600"
"m600s600m1200s600m600s600m600s600m600s600m600s25800"
"m2400s600m1200s600m600s600m1200s600m600s600m1200s600m600s600"
"m600s600m1200s600m600s600m600s600m600s600m600s25800"
"m2400s600m1200s600m600s600m1200s600m600s600m1200s600m600s600"
"m600s600m1200s600m600s600m600s600m600s600m600s25800",
irsend.outputStr());
}
// Test sending with different repeats.
TEST(TestSendSony, SendWithDiffRepeats) {
IRsendTest irsend(4);
irsend.begin();
irsend.reset();
irsend.sendSony(0x240C, kSony20Bits, 0); // Send a command with 0 repeats.
EXPECT_EQ(
"m2400s600m600s600m600s600m600s600m600s600m600s600m600s600m1200s600"
"m600s600m600s600m1200s600m600s600m600s600m600s600m600s600m600s600"
"m600s600m1200s600m1200s600m600s600m600s16200",
irsend.outputStr());
irsend.sendSony(0x240C, kSony20Bits, 1); // Send a command with 1 repeat.
EXPECT_EQ(
"m2400s600m600s600m600s600m600s600m600s600m600s600m600s600m1200s600"
"m600s600m600s600m1200s600m600s600m600s600m600s600m600s600m600s600"
"m600s600m1200s600m1200s600m600s600m600s16200"
"m2400s600m600s600m600s600m600s600m600s600m600s600m600s600m1200s600"
"m600s600m600s600m1200s600m600s600m600s600m600s600m600s600m600s600"
"m600s600m1200s600m1200s600m600s600m600s16200",
irsend.outputStr());
irsend.sendSony(0x240C, kSony20Bits, 3); // Send a command with 3 repeats.
EXPECT_EQ(
"m2400s600m600s600m600s600m600s600m600s600m600s600m600s600m1200s600"
"m600s600m600s600m1200s600m600s600m600s600m600s600m600s600m600s600"
"m600s600m1200s600m1200s600m600s600m600s16200"
"m2400s600m600s600m600s600m600s600m600s600m600s600m600s600m1200s600"
"m600s600m600s600m1200s600m600s600m600s600m600s600m600s600m600s600"
"m600s600m1200s600m1200s600m600s600m600s16200"
"m2400s600m600s600m600s600m600s600m600s600m600s600m600s600m1200s600"
"m600s600m600s600m1200s600m600s600m600s600m600s600m600s600m600s600"
"m600s600m1200s600m1200s600m600s600m600s16200"
"m2400s600m600s600m600s600m600s600m600s600m600s600m600s600m1200s600"
"m600s600m600s600m1200s600m600s600m600s600m600s600m600s600m600s600"
"m600s600m1200s600m1200s600m600s600m600s16200",
irsend.outputStr());
}
// Tests for encodeSony().
TEST(TestEncodeSony, NormalSonyEncoding) {
IRsendTest irsend(4);
EXPECT_EQ(0x0, irsend.encodeSony(kSony12Bits, 0, 0));
EXPECT_EQ(0xA90, irsend.encodeSony(kSony12Bits, 21, 1));
EXPECT_EQ(0xFFF, irsend.encodeSony(kSony12Bits, 0x7F, 0x1F));
EXPECT_EQ(0x0, irsend.encodeSony(kSony15Bits, 0, 0));
EXPECT_EQ(0x5480, irsend.encodeSony(kSony15Bits, 21, 1));
EXPECT_EQ(0x5455, irsend.encodeSony(kSony15Bits, 21, 0xAA));
EXPECT_EQ(0x7FFF, irsend.encodeSony(kSony15Bits, 0x7F, 0xFF));
EXPECT_EQ(0x0, irsend.encodeSony(kSony20Bits, 0, 0, 0));
EXPECT_EQ(0x81080, irsend.encodeSony(kSony20Bits, 1, 1, 1));
EXPECT_EQ(0xFFFFF, irsend.encodeSony(kSony20Bits, 0x7F, 0x1F, 0xFF));
}
TEST(TestEncodeSony, SonyEncodingWithOversizedValues) {
IRsendTest irsend(4);
EXPECT_EQ(0xFFF, irsend.encodeSony(kSony12Bits, 0xFFFF, 0xFFFF));
EXPECT_EQ(0x7FFF, irsend.encodeSony(kSony15Bits, 0xFFFF, 0xFFFF));
EXPECT_EQ(0xFFFFF, irsend.encodeSony(kSony20Bits, 0xFFFF, 0xFFFF, 0xFFFF));
}
// Tests for decodeSony().
// Decode normal Sony messages.
TEST(TestDecodeSony, NormalSonyDecodeWithStrict) {
IRsendTest irsend(4);
IRrecv irrecv(4);
irsend.begin();
// Synthesised Normal Sony 20-bit message.
irsend.reset();
irsend.sendSony(irsend.encodeSony(kSony20Bits, 0x1, 0x1, 0x1));
irsend.makeDecodeResult();
ASSERT_TRUE(irrecv.decodeSony(&irsend.capture, kSony20Bits, true));
EXPECT_EQ(SONY, irsend.capture.decode_type);
EXPECT_EQ(kSony20Bits, irsend.capture.bits);
EXPECT_EQ(0x81080, irsend.capture.value);
EXPECT_EQ(0x1, irsend.capture.address);
EXPECT_EQ(0x81, irsend.capture.command);
// Synthesised Normal Sony 15-bit message.
irsend.reset();
irsend.sendSony(irsend.encodeSony(kSony15Bits, 21, 1), kSony15Bits);
irsend.makeDecodeResult();
ASSERT_TRUE(irrecv.decodeSony(&irsend.capture, kSony15Bits, true));
EXPECT_EQ(SONY, irsend.capture.decode_type);
EXPECT_EQ(kSony15Bits, irsend.capture.bits);
EXPECT_EQ(0x5480, irsend.capture.value);
EXPECT_EQ(1, irsend.capture.address);
EXPECT_EQ(21, irsend.capture.command);
// Synthesised Normal Sony 12-bit message.
irsend.reset();
irsend.sendSony(irsend.encodeSony(kSony12Bits, 21, 1), kSony12Bits);
irsend.makeDecodeResult();
ASSERT_TRUE(irrecv.decodeSony(&irsend.capture, kSony12Bits, true));
EXPECT_EQ(SONY, irsend.capture.decode_type);
EXPECT_EQ(kSony12Bits, irsend.capture.bits);
EXPECT_EQ(0xA90, irsend.capture.value);
EXPECT_EQ(1, irsend.capture.address);
EXPECT_EQ(21, irsend.capture.command);
}
// Decode unexpected Sony messages. i.e longer than minimum etc.
TEST(TestDecodeSony, SonyDecodeWithUnexpectedLegalSize) {
IRsendTest irsend(4);
IRrecv irrecv(4);
irsend.begin();
// Synthesised Normal Sony 20-bit message decoded when looking for 12-bits
irsend.reset();
irsend.sendSony(irsend.encodeSony(kSony20Bits, 0x1, 0x1, 0x1));
irsend.makeDecodeResult();
ASSERT_TRUE(irrecv.decodeSony(&irsend.capture, kSonyMinBits));
EXPECT_EQ(SONY, irsend.capture.decode_type);
EXPECT_EQ(kSony20Bits, irsend.capture.bits);
EXPECT_EQ(0x81080, irsend.capture.value);
EXPECT_EQ(0x1, irsend.capture.address);
EXPECT_EQ(0x81, irsend.capture.command);
// Synthesised Normal Sony 12-bit message when expecting 20-bits.
irsend.reset();
irsend.sendSony(irsend.encodeSony(kSony12Bits, 21, 1), kSony12Bits);
irsend.makeDecodeResult();
ASSERT_TRUE(irrecv.decodeSony(&irsend.capture, kSony20Bits));
EXPECT_EQ(SONY, irsend.capture.decode_type);
EXPECT_EQ(kSony12Bits, irsend.capture.bits);
EXPECT_EQ(0xA90, irsend.capture.value);
EXPECT_EQ(1, irsend.capture.address);
EXPECT_EQ(21, irsend.capture.command);
// 12-bit message should be regected when using strict and a different size.
irsend.reset();
irsend.sendSony(irsend.encodeSony(kSony12Bits, 21, 1), kSony12Bits);
irsend.makeDecodeResult();
ASSERT_FALSE(irrecv.decodeSony(&irsend.capture, kSony20Bits, true));
ASSERT_FALSE(irrecv.decodeSony(&irsend.capture, kSony15Bits, true));
// 15-bit message should be regected when using strict and a different size.
irsend.reset();
irsend.sendSony(irsend.encodeSony(kSony15Bits, 21, 1), kSony15Bits);
irsend.makeDecodeResult();
ASSERT_FALSE(irrecv.decodeSony(&irsend.capture, kSony12Bits, true));
ASSERT_FALSE(irrecv.decodeSony(&irsend.capture, kSony20Bits, true));
// 20-bit message should be regected when using strict and a different size.
irsend.reset();
irsend.sendSony(irsend.encodeSony(kSony20Bits, 1, 1, 1), kSony20Bits);
irsend.makeDecodeResult();
ASSERT_FALSE(irrecv.decodeSony(&irsend.capture, kSony12Bits, true));
ASSERT_FALSE(irrecv.decodeSony(&irsend.capture, kSony15Bits, true));
}
// Decode unsupported Sony messages. i.e non-standard sizes.
TEST(TestDecodeSony, SonyDecodeWithIllegalSize) {
IRsendTest irsend(4);
IRrecv irrecv(4);
irsend.begin();
irsend.reset();
irsend.sendSony(0xFF, 8); // Illegal 8-bit Sony-like message.
irsend.makeDecodeResult();
// Should fail with strict on.
EXPECT_FALSE(irrecv.decodeSony(&irsend.capture, kSonyMinBits, true));
EXPECT_FALSE(irrecv.decodeSony(&irsend.capture, kSony12Bits, true));
EXPECT_FALSE(irrecv.decodeSony(&irsend.capture, kSony15Bits, true));
EXPECT_FALSE(irrecv.decodeSony(&irsend.capture, kSony20Bits, true));
// Should work with a 'normal' match (not strict)
ASSERT_TRUE(irrecv.decodeSony(&irsend.capture));
EXPECT_EQ(SONY, irsend.capture.decode_type);
EXPECT_EQ(8, irsend.capture.bits);
EXPECT_EQ(0xFF, irsend.capture.value);
EXPECT_EQ(0x0, irsend.capture.address);
EXPECT_EQ(0x0, irsend.capture.command);
irsend.reset();
irsend.sendSony(0x1FFF, 13); // Illegal 13-bit Sony-like message.
irsend.makeDecodeResult();
// Should fail with strict on.
EXPECT_FALSE(irrecv.decodeSony(&irsend.capture, kSonyMinBits, true));
EXPECT_FALSE(irrecv.decodeSony(&irsend.capture, kSony12Bits, true));
EXPECT_FALSE(irrecv.decodeSony(&irsend.capture, kSony15Bits, true));
EXPECT_FALSE(irrecv.decodeSony(&irsend.capture, kSony20Bits, true));
// Should work with a 'normal' match (not strict)
ASSERT_TRUE(irrecv.decodeSony(&irsend.capture));
EXPECT_EQ(SONY, irsend.capture.decode_type);
EXPECT_EQ(13, irsend.capture.bits);
EXPECT_EQ(0x1FFF, irsend.capture.value);
EXPECT_EQ(0x0, irsend.capture.address);
EXPECT_EQ(0x0, irsend.capture.command);
irsend.reset();
irsend.sendSony(0x1FFFF, 17); // Illegal 17-bit Sony-like message.
irsend.makeDecodeResult();
// Should fail with strict on.
EXPECT_FALSE(irrecv.decodeSony(&irsend.capture, kSonyMinBits, true));
EXPECT_FALSE(irrecv.decodeSony(&irsend.capture, kSony12Bits, true));
EXPECT_FALSE(irrecv.decodeSony(&irsend.capture, kSony15Bits, true));
EXPECT_FALSE(irrecv.decodeSony(&irsend.capture, kSony20Bits, true));
// Should work with a 'normal' match (not strict)
ASSERT_TRUE(irrecv.decodeSony(&irsend.capture));
EXPECT_EQ(SONY, irsend.capture.decode_type);
EXPECT_EQ(17, irsend.capture.bits);
EXPECT_EQ(0x1FFFF, irsend.capture.value);
EXPECT_EQ(0x0, irsend.capture.address);
EXPECT_EQ(0x0, irsend.capture.command);
irsend.reset();
irsend.sendSony(0x1FFFFF, 21); // Illegal 21-bit Sony-like message.
irsend.makeDecodeResult();
// Should fail with strict on.
EXPECT_FALSE(irrecv.decodeSony(&irsend.capture, kSonyMinBits, true));
EXPECT_FALSE(irrecv.decodeSony(&irsend.capture, kSony12Bits, true));
EXPECT_FALSE(irrecv.decodeSony(&irsend.capture, kSony15Bits, true));
EXPECT_FALSE(irrecv.decodeSony(&irsend.capture, kSony20Bits, true));
// Should work with a 'normal' match (not strict)
ASSERT_TRUE(irrecv.decodeSony(&irsend.capture));
EXPECT_EQ(SONY, irsend.capture.decode_type);
EXPECT_EQ(21, irsend.capture.bits);
EXPECT_EQ(0x1FFFFF, irsend.capture.value);
EXPECT_EQ(0x0, irsend.capture.address);
EXPECT_EQ(0x0, irsend.capture.command);
irsend.reset();
// Illegal 64-bit (max) Sony-like message.
irsend.sendSony(0xFFFFFFFFFFFFFFFF, 64, 0);
irsend.makeDecodeResult();
// Should work with a 'normal' match (not strict)
ASSERT_TRUE(irrecv.decodeSony(&irsend.capture));
EXPECT_EQ(SONY, irsend.capture.decode_type);
EXPECT_EQ(64, irsend.capture.bits);
EXPECT_EQ(0xFFFFFFFFFFFFFFFF, irsend.capture.value);
EXPECT_EQ(0x0, irsend.capture.address);
EXPECT_EQ(0x0, irsend.capture.command);
}
// Decode unsupported Sony messages. i.e non-standard sizes.
TEST(TestDecodeSony, DecodeGlobalCacheExample) {
IRsendTest irsend(4);
IRrecv irrecv(4);
irsend.begin();
irsend.reset();
// Sony "Power On" from Global Cache.
uint16_t gc_test[29] = {40000, 1, 1, 96, 24, 24, 24, 48, 24, 48,
24, 48, 24, 24, 24, 48, 24, 24, 24, 48,
24, 24, 24, 24, 24, 24, 24, 24, 1013};
irsend.sendGC(gc_test, 29);
irsend.makeDecodeResult();
// Without strict.
ASSERT_TRUE(irrecv.decodeSony(&irsend.capture));
EXPECT_EQ(SONY, irsend.capture.decode_type);
EXPECT_EQ(12, irsend.capture.bits);
EXPECT_EQ(0x750, irsend.capture.value);
EXPECT_EQ(0x1, irsend.capture.address);
EXPECT_EQ(0x2E, irsend.capture.command);
// With strict and correct size.
ASSERT_TRUE(irrecv.decodeSony(&irsend.capture, kSony12Bits, true));
}
// Encoding & Decode 20 bit Sony messages. Issue #476
TEST(TestEncodeSony, Issue476) {
IRsendTest irsend(0);
IRrecv irrecv(0);
irsend.begin();
irsend.reset();
irsend.sendSony(0x6AB47, 20);
irsend.makeDecodeResult();
// Without strict.
ASSERT_TRUE(irrecv.decode(&irsend.capture));
EXPECT_EQ(SONY, irsend.capture.decode_type);
EXPECT_EQ(20, irsend.capture.bits);
EXPECT_EQ(0x6AB47, irsend.capture.value); // 20 bits
EXPECT_EQ(0x1A, irsend.capture.address); // 5 bits
EXPECT_EQ(0x7156, irsend.capture.command); // 15 bits
EXPECT_EQ(0x56, 0x7156 & 0x7F); // command (lower 7 bits)
EXPECT_EQ(0xE2, (0x7156 >> 7) & 0xFF); // extended (top 8 of 15 bits)
EXPECT_EQ(0x6AB47, irsend.encodeSony(20, 0x56, 0x1A, 0xE2));
}