fssclh -= I2C_HIGHSPEED_PHASE_ONE_SCLH_TRIM;
                if (((fsscll < 0) || (fssclh < 0)) ||
                    ((fsscll > 255) || (fssclh > 255))) {
-                       printf("Error : I2C initializing first phase clock\n");
+                       puts("Error : I2C initializing first phase clock\n");
                        return;
                }
 
                hssclh -= I2C_HIGHSPEED_PHASE_TWO_SCLH_TRIM;
                if (((fsscll < 0) || (fssclh < 0)) ||
                    ((fsscll > 255) || (fssclh > 255))) {
-                       printf("Error : I2C initializing second phase clock\n");
+                       puts("Error : I2C initializing second phase clock\n");
                        return;
                }
 
                fssclh -= I2C_FASTSPEED_SCLH_TRIM;
                if (((fsscll < 0) || (fssclh < 0)) ||
                    ((fsscll > 255) || (fssclh > 255))) {
-                       printf("Error : I2C initializing clock\n");
+                       puts("Error : I2C initializing clock\n");
                        return;
                }
 
        writew(I2C_CON_EN, &i2c_base->con);
        while (!(readw(&i2c_base->syss) & I2C_SYSS_RDONE) && timeout--) {
                if (timeout <= 0) {
-                       printf("ERROR: Timeout in soft-reset\n");
+                       puts("ERROR: Timeout in soft-reset\n");
                        return;
                }
                udelay(1000);
        }
 
        if (addr + len > 256) {
-               printf("I2C read: address out of range\n");
+               puts("I2C read: address out of range\n");
                return 1;
        }
 
        for (i = 0; i < len; i++) {
                if (i2c_read_byte(chip, addr + i, &buffer[i])) {
-                       printf("I2C read: I/O error\n");
+                       puts("I2C read: I/O error\n");
                        i2c_init(CONFIG_SYS_I2C_SPEED, CONFIG_SYS_I2C_SLAVE);
                        return 1;
                }