Monday 9 May 2022

FULL MOVIE: The Star Wars Holiday Special (1978)

 

The Star Wars Holiday Special[a] is a 1978 American television special that originally aired on November 17, 1978, on CBS. It is set in the universe of the sci-fi-based Star Wars media franchise. Directed by Steve Binder, it was the first Star Wars spin-off film, set between the events of the original film and The Empire Strikes Back (1980). It stars the main cast of the original Star Wars and introduces the character of Boba Fett, who appeared in later films.

In the story line that ties the special together, following the events of the original film, Chewbacca and Han Solo attempt to visit the Wookiee home planet of Kashyyyk to celebrate "Life Day". They are pursued by agents of the Galactic Empire, who are searching for members of the Rebel Alliance on the planet. The special introduces three members of Chewbacca's family: his father Itchy, his wife Malla, and his son Lumpy.

The program also features the rest of the main Star Wars characters, including Luke Skywalker, C-3PO, R2-D2, Darth Vader and Princess Leia, all portrayed by the original cast (except R2-D2, who is simply billed as "himself"). The program includes footage from the 1977 film and a cartoon produced by Toronto-based Nelvana featuring the bounty hunter Boba Fett. Scenes take place in space and in spacecraft including the Millennium Falcon and a Star Destroyer; segments also take place in a few other locales, such as the Mos Eisley cantina from the original film.

The special is notorious for its extremely negative reception and has never been rebroadcast nor officially released on home video. It has become somewhat of a cultural legend due to the underground quality of its existence. It has been viewed and distributed in off-air recordings made from its original telecast by fans as bootleg copies, and it has also been uploaded to content-sharing websites. In contrast, the animated segment that introduced Boba Fett was positively received and, in 2021, was released on Disney+.