package tester // I2CDevice represents a mock I2C device on a mock I2C bus with 8-bit registers. type I2CDevice8 struct { c Failer // addr is the i2c device address. addr uint8 // Registers holds the device registers. It can be inspected // or changed as desired for testing. Registers [MaxRegisters]uint8 // If Err is non-nil, it will be returned as the error from the // I2C methods. Err error } // NewI2CDevice returns a new mock I2C device. // // For compatibility, this creates an instance of NewI2CDevice8 func NewI2CDevice(c Failer, addr uint8) *I2CDevice8 { return NewI2CDevice8(c, addr) } // NewI2CDevice8 returns a new mock I2C device. func NewI2CDevice8(c Failer, addr uint8) *I2CDevice8 { return &I2CDevice8{ c: c, addr: addr, } } // Addr returns the Device address. func (d *I2CDevice8) Addr() uint8 { return d.addr } // ReadRegister implements I2C.ReadRegister. func (d *I2CDevice8) ReadRegister(r uint8, buf []byte) error { if d.Err != nil { return d.Err } d.assertRegisterRange(r, buf) copy(buf, d.Registers[r:]) return nil } // WriteRegister implements I2C.WriteRegister. func (d *I2CDevice8) WriteRegister(r uint8, buf []byte) error { if d.Err != nil { return d.Err } d.assertRegisterRange(r, buf) copy(d.Registers[r:], buf) return nil } // Tx implements I2C.Tx. func (bus *I2CDevice8) Tx(w, r []byte) error { // TODO: implement this return nil } // assertRegisterRange asserts that reading or writing the given // register and subsequent registers is in range of the available registers. func (d *I2CDevice8) assertRegisterRange(r uint8, buf []byte) { if int(r) >= len(d.Registers) { d.c.Fatalf("register read/write [%#x, %#x] start out of range", r, int(r)+len(buf)) } if int(r)+len(buf) > len(d.Registers) { d.c.Fatalf("register read/write [%#x, %#x] end out of range", r, int(r)+len(buf)) } }